Kulik Leonid V, Epel Boris, Lubitz Wolfgang, Messinger Johannes
Max Planck Institute for Bioinorganic Chemistry, Stiftstrasse 34-36, Mülheim an der Ruhr, Germany.
J Am Chem Soc. 2007 Nov 7;129(44):13421-35. doi: 10.1021/ja071487f. Epub 2007 Oct 10.
The heart of the oxygen-evolving complex (OEC) of photosystem II is a Mn4OxCa cluster that cycles through five different oxidation states (S0 to S4) during the light-driven water-splitting reaction cycle. In this study we interpret the recently obtained 55Mn hyperfine coupling constants of the S0 and S2 states of the OEC [Kulik et al. J. Am. Chem. Soc. 2005, 127, 2392-2393] on the basis of Y-shaped spin-coupling schemes with up to four nonzero exchange coupling constants, J. This analysis rules out the presence of one or more Mn(II) ions in S0 in methanol (3%) containing samples and thereby establishes that the oxidation states of the manganese ions in S0 and S2 are, at 4 K, Mn4(III, III, III, IV) and Mn4(III, IV, IV, IV), respectively. By applying a "structure filter" that is based on the recently reported single-crystal EXAFS data on the Mn4OxCa cluster [Yano et al. Science 2006, 314, 821-825] we (i) show that this new structural model is fully consistent with EPR and 55Mn-ENDOR data, (ii) assign the Mn oxidation states to the individual Mn ions, and (iii) propose that the known shortening of one 2.85 A Mn-Mn distance in S0 to 2.75 A in S1 [Robblee et al. J. Am. Chem. Soc. 2002, 124, 7459-7471] corresponds to a deprotonation of a mu-hydroxo bridge between MnA and MnB, i.e., between the outer Mn and its neighboring Mn of the mu3-oxo bridged moiety of the cluster. We summarize our results in a molecular model for the S0 --> S1 and S1 --> S2 transitions.
光系统II放氧复合体(OEC)的核心是一个Mn4OxCa簇,在光驱动的水分解反应循环中,该簇会经历五种不同的氧化态(S0到S4)。在本研究中,我们基于具有多达四个非零交换耦合常数J的Y形自旋耦合方案,解释了最近获得的OEC的S0和S2态的55Mn超精细耦合常数[Kulik等人,《美国化学会志》,2005年,127卷,2392 - 2393页]。该分析排除了在含3%甲醇的样品中S0存在一个或多个Mn(II)离子的可能性,从而确定在4 K时,S0和S2中锰离子的氧化态分别为Mn4(III, III, III, IV)和Mn4(III, IV, IV, IV)。通过应用基于最近报道的Mn4OxCa簇的单晶EXAFS数据[Yano等人,《科学》,2006年,314卷,821 - 825页]的“结构过滤器”,我们(i)表明这种新的结构模型与EPR和55Mn - ENDOR数据完全一致,(ii)将Mn氧化态分配给各个Mn离子,并且(iii)提出已知的S0中一个2.85 Å的Mn - Mn距离在S1中缩短至2.75 Å [Robblee等人,《美国化学会志》,2002年,124卷,7459 - 7471页]对应于MnA和MnB之间(即簇的μ3 - 氧桥部分的外层Mn与其相邻Mn之间)的μ - 羟基桥的去质子化。我们在一个关于S0→S1和S1→S2转变的分子模型中总结了我们的结果。